Self-referencing of an on-chip soliton Kerr frequency comb without external broadening
arXiv:1605.02801 · doi:10.1038/lsa.2016.202
Abstract
Self-referencing turns pulsed laser systems into self-referenced frequency combs. Such frequency combs allow counting of optical frequencies and have a wide range of applications. The required optical bandwidth to implement self-referencing is typically obtained via nonlinear broadening in optical fibers. Recent advances in the field of Kerr frequency combs have provided a path towards the development of compact frequency comb sources that provide broadband frequency combs, exhibit microwave repetition rates and that are compatible with on-chip photonic integration. These devices have the potential to significantly expand the use of frequency combs. Yet to date self-referencing of such Kerr frequency combs has only been attained by applying conventional, fiber based broadening techniques. Here we demonstrate external broadening-free self-referencing of a Kerr frequency comb. An optical spectrum that spans two-thirds of an octave is directly synthesized from a continuous wave laser-driven silicon nitride microresonator using temporal dissipative Kerr soliton formation and soliton Cherenkov radiation. Using this coherent bandwidth and two continuous wave transfer lasers in a 2f-3f self-referencing scheme, we are able to detect the offset frequency of the soliton Kerr frequency comb. By stabilizing the repetition rate to a radio frequency reference the self-referenced frequency comb is used to count and track the continuous wave pump laser's frequency. This work demonstrates the principal ability of soliton Kerr frequency combs to provide microwave-to-optical clockworks on a chip.
6 pages, 4 figures
References in corpus (6)
- All-optical signal processing platforms for CMOS compatible integrated nonlinear optics
- Silicon-Chip Mid-Infrared Frequency Comb Generation
- Thermally Controlled Comb Generation and Soliton Modelocking in Microresonators
- Full Stabilization of a Microresonator based Optical Frequency Comb
- Observation of dispersive wave emission by temporal cavity solitons
- Frequency Comb Assisted Broadband Precision Spectroscopy with Cascaded Diode Lasers
Cited by in corpus (40)
- Microresonator solitons for massively parallel coherent optical communications
- 20 years of developments in optical frequency comb technology and applications
- An Integrated-Photonics Optical-Frequency Synthesizer
- Stably accessing octave-spanning microresonator frequency combs in the soliton regime
- Octave-spanning dissipative Kerr soliton frequency combs in microresonators
- Applications of integrated optical microcombs
- Probing the loss origins of ultra-smooth integrated photonic waveguides
- Thermal and Nonlinear Dissipative-Soliton Dynamics in Kerr Microresonator Frequency Combs
- Single-mode dispersive waves and soliton microcomb dynamics
- Breathing dissipative solitons in optical microresonators
- Ultralow-Noise Photonic Microwave Synthesis using a Soliton Microcomb-based Transfer Oscillator
- Spatial multiplexing of soliton microcombs
- Theory for the Accuracy of Microcomb Photonic Microwave Transversal Signal Processors
- Photonic chip-based soliton frequency combs covering the biological imaging window
- Optical-frequency measurements with a Kerr-microcomb and photonic-chip supercontinuum
- Detuning-dependent Properties and Dispersion-induced Instabilities of Temporal Dissipative Kerr Solitons in Optical Microresonators
- Spontaneous symmetry breaking and trapping of temporal Kerr cavity solitons by pulsed or amplitude modulated driving fields
- Efficient visible frequency comb generation via Cherenkov radiation from a Kerr microcomb
- A Kerr-microresonator optical clockwork
- Octave-spanning Kerr soliton frequency combs in dispersion- and dissipation-engineered lithium niobate microresonators
- Dissipative cnoidal waves (Turing rolls) and the soliton limit in microring resonators
- Invited Review: Micro-fabricated components for cold atom sensors
- Long-haul coherent communications using microresonator-based frequency combs
- Inter-mode breather solitons in optical microresonators
- Phased-Locked Two-Color Single Soliton Microcombs in Dispersion-Engineered Si3N4 Resonators
- Hybrid InP and SiN integration of an octave-spanning frequency comb
- A chip-scale second-harmonic source via injection-locked all-optical poling
- Phase-stabilised self-injection-locked microcomb
- Stable and compact RF-to-optical link using lithium niobate on insulator waveguides
- Cherenkov radiation induced symmetry breaking in counter propagating dissipative Kerr solitons
- Programmable access to microresonator solitons with modulational sideband heating
- Soliton trapping and comb self-referencing in a single microresonator with and nonlinearities
- Control of Second Harmonic Generation in Doubly Resonant Aluminum Nitride Microrings to Address Rubidium Two-Photon Clock Transition
- All-Optical Noise Quenching of An Integrated Frequency Comb
- Kerr-microresonator solitons for accurate carrier-envelope-frequency stabilization
- Intra-cavity field dynamics near avoided mode crossing in concentric silicon nitride ring resonator
- Emission of intense resonant radiation by dispersion-managed Kerr cavity solitons
- PHz Electronic Device Design and Simulation for Waveguide-Integrated Carrier-Envelope Phase Detection
- Coherent satellites in multi-spectral regenerative frequency microcombs
- Discovery of dissipative microwave photonic solitons